论文标题

eagle模拟中DLA的分布和属性在z $ \ leq $ 2

The distribution and properties of DLAs at z $\leq$ 2 in the EAGLE simulations

论文作者

Garratt-Smithson, Lilian, Power, Chris, Lagos, Claudia del P., Stevens, Adam R. H., Allison, James R., Sadler, Elaine M.

论文摘要

确定中性氢在宇宙学量表上的空间分布和内在物理特性是下一代无线电调查的关键目标之一。我们使用Eagle Galaxy形成模拟来评估与星系及其基础的暗物质光环相关的阻尼Lyman-Alpha吸收器(DLA)的性质,在0 $ \ leq $ z $ \ leq $ 2之间。大量的中性原子氢(HI)位于恒星质量大于或等于10 $^{10} $ M $ _ \ odot $的星系郊区;与星际培养基(ISM)相对于晕Halo质量增加的星际培养基(CGM)中DLA的覆盖量得到了增强。此外,我们发现星系中HI的平均密度随着恒星质量的增加而增加,而高途径和低途径系统中的DLA具有比具有中间光环质量的星系(〜10 $^{12} $ M $ _ \ m $ _ \ odot $在z = 0时)更高的圆柱密度。这些高标准质量系统中的这些高影响的CGM DLA往往是金属贫困的,可能会追踪平滑积聚。总体而言,我们的结果表明,CGM在高红移(z $ \ geq $ 1)的DLA研究中发挥了重要作用。但是,它们的性质受到数值分辨率和宇宙学模拟(尤其是AGN的详细反馈处方)的影响。

Determining the spatial distribution and intrinsic physical properties of neutral hydrogen on cosmological scales is one of the key goals of next-generation radio surveys. We use the EAGLE galaxy formation simulations to assess the properties of damped Lyman-alpha absorbers (DLAs) that are associated with galaxies and their underlying dark matter haloes between 0 $\leq$ z $\leq$ 2. We find that the covering fraction of DLAs increases at higher redshift; a significant fraction of neutral atomic hydrogen (HI) resides in the outskirts of galaxies with stellar mass greater than or equal to 10$^{10}$ M$_\odot$; and the covering fraction of DLAs in the circumgalactic medium (CGM) is enhanced relative to that of the interstellar medium (ISM) with increasing halo mass. Moreover, we find that the mean density of the HI in galaxies increases with increasing stellar mass, while the DLAs in high- and low-halo-mass systems have higher column densities than those in galaxies with intermediate halo masses (~ 10$^{12}$ M$_\odot$ at z = 0). These high-impact CGM DLAs in high-stellar-mass systems tend to be metal-poor, likely tracing smooth accretion. Overall, our results point to the CGM playing an important role in DLA studies at high redshift (z $\geq$ 1). However, their properties are impacted both by numerical resolution and the detailed feedback prescriptions employed in cosmological simulations, particularly that of AGN.

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